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Low Dose Iron Therapy in Children with Iron Deficiency: DNA Damage and Oxidant Stress Markers
Hanan M Hamed1, Ayat A Motawie1, Amany M Abd Al-Aziz1
1Pediatrics Department, National Research Centre, Cairo, Egypt.
Insights
Low-dose oral iron therapy effectively improved antioxidant markers and reduced DNA damage in children with iron deficiency (ID) and iron deficiency anemia (IDA). This treatment also corrected hematological indices, highlighting its therapeutic potential.
Area of Science:
- Biochemistry
- Pediatrics
- Hematology
Background:
- Conflicting data exist on oral iron therapy's effects on DNA damage, oxidative stress, and antioxidant markers in pediatric iron deficiency (ID) and iron deficiency anemia (IDA).
- Understanding these relationships is crucial for optimizing treatment strategies.
Purpose of the Study:
- To assess DNA damage, oxidative stress, and antioxidant markers in children with ID and IDA.
- To evaluate the impact of low-dose oral iron therapy on these markers and hematological parameters.
Main Methods:
- Comet assay, malondialdehyde (MDA), superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPx), and total antioxidant capacity (TAC) were measured.
- Markers were assessed in 39 children with IDA, 45 with ID, and 60 controls before and after 8 weeks of 10 mg/day ferric ammonium citrate therapy.
Main Results:
- Before treatment, DNA damage was significantly higher in ID and IDA groups compared to controls.
- After iron therapy, hematological parameters improved in the IDA group.
- Significant increases in GPx, SOD, and TAC, and a non-significant reduction in DNA damage were observed in the IDA group.
- The ID group showed significant increases in SOD and TAC, and a significant decrease in DNA damage.
Conclusions:
- Low-dose oral iron therapy is sufficient to improve antioxidant status and reduce DNA damage in children with ID and IDA.
- Therapy also effectively corrects hematological indices, suggesting a beneficial role beyond anemia correction.
Abstract:
Conflicting data are available regarding oral iron therapy in iron deficiency (ID), iron deficiency anemia (IDA) and its relation to DNA damage, oxidative stress and antioxidant markers. Our aim was assessment of DNA damage, oxidative stress and anti-oxidant markers in children with ID and IDA before and after low dose iron therapy. The study was conducted in two stages, first stage was assessment of DNA damage using comet assay, malondialdehyde (MDA) and anti-oxidant enzymes levels (superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPx) & total antioxidant capacity (TAC) in thirty-nine children with IDA, forty-five children with ID without anemia and sixty healthy controls. Second stage was assessment of previous markers together with hematological response following oral therapy with 10 mg/day ferric ammonium citrate for 8 weeks. Before treatment, there was no significant difference between the three groups regarding MDA, GPx, SOD, CAT and TAC. A significant increase was detected in the DNA damage in the 2 groups compared to control (p < 0.005). Following iron therapy, hematological parameters was improved together with a significant increase in GPx (P = 0.04), SOD (p = 0.002), TAC (P = 0.001) and non-significant reduction in DNA damage in IDA group. There was a significant increase in SOD (p = 0.001) & TAC (p = 0.001) and significant decrease in DNA damage (p = 0.001) in ID group. Low dose iron therapy could be sufficient to improve antioxidant status and DNA damage together with correction of hematologic indices.
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